Zhao Zexin, Ji Yinghe, Liu Xiaomei, Zhao Longshan
School of Pharmacy, Shenyang Pharmaceutical University, Shenyang 110016, China.
Se Pu. 2021 Feb;39(2):152-161. doi: 10.3724/SP.J.1123.2020.07015.
With the rapid development of green chemistry, the design and application of the related methods and requisite solvents have received increasing attention in recent years. Deep eutectic solvents (DESs) are mixtures formed from a hydrogen bond acceptor (HBA) and a hydrogen bond donor (HBD). Generally, ionic liquids (ILs) and DESs have similar physical and chemical properties, and hence, find application in the same fields. However, DESs have many advantages over ILs, such as non-toxicity, environmental friendliness, low cost, and biodegradability. Thus, there are many areas where DESs play a key role and act as new, efficient green extraction solvents. DESs can aid the extraction and separation of different target compounds from a variety of samples, thus promoting the rapid development of sample pretreatment technology. As extraction solvents, DESs offer unique advantages. In dispersive liquid-liquid microextraction (DLLME), DESs show incredible ability to extract residual drugs, metal ions, and bioactive components from complex matrices, which would require complicated sample preparation steps when using traditional organic extraction solvents. Compared with traditional organic extraction solvents, DESs have considerable merits of greenness, hypotoxicity, higher extraction efficiency, etc. Moreover, as a dispersant, a DES can accelerate the diffusion of the extractant in the sample solution during DLLME, owing to its benefits of miniaturization and low cost. Traditional dispersants such as methanol and acetonitrile have many disadvantages, including high volatility, flammability, and toxicity, while DESs are environmentally friendly. Therefore, the combination of DES and DLLME has recently gained prominence in the field of sample preparation. Additionally, the combination of DES and solid-phase extraction (SPE) has broad application prospects. By virtue of their diverse functions, DESs have been used as eluents, in combination with a solid-phase extraction column and a stir bar, to elute analytes from the sorbent surface. The molar ratio of the HBA and HBD is one of the important factors influencing the elution efficiency. DESs can be combined with magnetic multiwalled carbon nanotubes, magnetic graphene oxide, and other nanocomposites to specifically adsorb target analytes through hydrogen bonding, forces, and electrostatic forces. In addition, the DES can be used in the synthesis of magnetic nanocomposites and molecularly imprinted polymers when combined with magnetic materials. Magnetic nanocomposites functionalized with DES show excellent performance and high efficiency in the extraction process. The combination of DES and magnetic materials would promote the development of magnetic materials for green chemistry and expand the application of DES to several other fields. However, to the best of our knowledge, research on the microstructure, physical and chemical properties, and extraction mechanism of DESs is still in its nascent stage. Therefore, exploring the theoretical mechanism and applications of new DESs with special functions would be an essential future research direction. This article integrates the research progress of DESs in extraction separation technology; introduces the preparation, properties, and classification of DESs; and summarizes the applications of DESs in DLLME and SPE.
随着绿色化学的迅速发展,近年来相关方法及所需溶剂的设计与应用受到了越来越多的关注。深共熔溶剂(DESs)是由氢键受体(HBA)和氢键供体(HBD)形成的混合物。一般来说,离子液体(ILs)和DESs具有相似的物理和化学性质,因此在相同领域得到应用。然而,DESs相较于ILs具有许多优势,如无毒、环境友好、成本低和可生物降解性。因此,在许多领域DESs发挥着关键作用,并作为新型高效绿色萃取溶剂。DESs有助于从各种样品中萃取和分离不同的目标化合物,从而推动了样品预处理技术的快速发展。作为萃取溶剂,DESs具有独特的优势。在分散液液微萃取(DLLME)中,DESs表现出令人难以置信的能力,能够从复杂基质中萃取残留药物、金属离子和生物活性成分,而使用传统有机萃取溶剂时需要复杂的样品制备步骤。与传统有机萃取溶剂相比,DESs具有绿色、低毒、萃取效率高等显著优点。此外,作为分散剂,DES在DLLME过程中可加速萃取剂在样品溶液中的扩散,这得益于其小型化和低成本的优势。甲醇和乙腈等传统分散剂存在许多缺点,包括高挥发性、易燃性和毒性,而DESs则环境友好。因此,DES与DLLME的结合最近在样品制备领域备受关注。此外,DES与固相萃取(SPE)的结合具有广阔的应用前景。凭借其多样的功能,DESs已被用作洗脱剂,与固相萃取柱和搅拌棒结合,从吸附剂表面洗脱分析物。HBA和HBD的摩尔比是影响洗脱效率的重要因素之一。DESs可与磁性多壁碳纳米管、磁性氧化石墨烯等纳米复合材料结合,通过氢键、作用力和静电力特异性吸附目标分析物。此外,DES与磁性材料结合时可用于磁性纳米复合材料和分子印迹聚合物的合成。用DES功能化的磁性纳米复合材料在萃取过程中表现出优异的性能和高效率。DES与磁性材料的结合将推动绿色化学磁性材料的发展,并将DES的应用扩展到其他几个领域。然而,据我们所知,关于DESs的微观结构、物理和化学性质以及萃取机理的研究仍处于起步阶段。因此,探索具有特殊功能的新型DESs的理论机理和应用将是未来重要的研究方向。本文综合了DESs在萃取分离技术方面的研究进展;介绍了DESs的制备、性质和分类;并总结了DESs在DLLME和SPE中的应用。